886 lines
25 KiB
Rust
886 lines
25 KiB
Rust
// Copyright 2012 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
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// http://rust-lang.org/COPYRIGHT.
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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use metadata::encoder;
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use middle::ty::{ReSkolemized, ReVar};
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use middle::ty::{bound_region, br_anon, br_named, br_self, br_cap_avoid};
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use middle::ty::{br_fresh, ctxt, field};
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use middle::ty::{mt, t, param_ty};
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use middle::ty::{re_bound, re_free, re_scope, re_infer, re_static, Region,
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re_empty};
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use middle::ty::{ty_bool, ty_bot, ty_box, ty_struct, ty_enum};
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use middle::ty::{ty_err, ty_estr, ty_evec, ty_float, ty_bare_fn, ty_closure};
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use middle::ty::{ty_nil, ty_opaque_box, ty_opaque_closure_ptr, ty_param};
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use middle::ty::{ty_ptr, ty_rptr, ty_self, ty_tup, ty_type, ty_uniq};
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use middle::ty::{ty_trait, ty_int};
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use middle::ty::{ty_uint, ty_unboxed_vec, ty_infer};
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use middle::ty;
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use middle::typeck;
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use syntax::abi::AbiSet;
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use syntax::ast_map;
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use syntax::codemap::Span;
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use syntax::parse::token;
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use syntax::print::pprust;
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use syntax::{ast, ast_util};
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use syntax::opt_vec;
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use syntax::opt_vec::OptVec;
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/// Produces a string suitable for debugging output.
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pub trait Repr {
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fn repr(&self, tcx: ctxt) -> ~str;
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}
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/// Produces a string suitable for showing to the user.
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pub trait UserString {
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fn user_string(&self, tcx: ctxt) -> ~str;
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}
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pub fn note_and_explain_region(cx: ctxt,
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prefix: &str,
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region: ty::Region,
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suffix: &str) {
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match explain_region_and_span(cx, region) {
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(ref str, Some(span)) => {
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cx.sess.span_note(
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span,
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fmt!("%s%s%s", prefix, (*str), suffix));
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}
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(ref str, None) => {
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cx.sess.note(
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fmt!("%s%s%s", prefix, (*str), suffix));
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}
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}
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}
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/// Returns a string like "the block at 27:31" that attempts to explain a
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/// lifetime in a way it might plausibly be understood.
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pub fn explain_region(cx: ctxt, region: ty::Region) -> ~str {
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let (res, _) = explain_region_and_span(cx, region);
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return res;
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}
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pub fn explain_region_and_span(cx: ctxt, region: ty::Region)
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-> (~str, Option<Span>) {
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return match region {
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re_scope(node_id) => {
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match cx.items.find(&node_id) {
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Some(&ast_map::node_block(ref blk)) => {
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explain_span(cx, "block", blk.span)
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}
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Some(&ast_map::node_callee_scope(expr)) => {
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explain_span(cx, "callee", expr.span)
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}
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Some(&ast_map::node_expr(expr)) => {
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match expr.node {
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ast::ExprCall(*) => explain_span(cx, "call", expr.span),
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ast::ExprMethodCall(*) => {
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explain_span(cx, "method call", expr.span)
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},
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ast::ExprMatch(*) => explain_span(cx, "match", expr.span),
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_ => explain_span(cx, "expression", expr.span)
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}
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}
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Some(&ast_map::node_stmt(stmt)) => {
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explain_span(cx, "statement", stmt.span)
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}
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Some(&ast_map::node_item(it, _)) if (match it.node {
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ast::item_fn(*) => true, _ => false}) => {
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explain_span(cx, "function body", it.span)
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}
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Some(_) | None => {
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// this really should not happen
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(fmt!("unknown scope: %d. Please report a bug.", node_id),
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None)
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}
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}
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}
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re_free(ref fr) => {
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let prefix = match fr.bound_region {
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br_anon(idx) => fmt!("the anonymous lifetime #%u defined on",
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idx + 1),
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br_fresh(_) => fmt!("an anonymous lifetime defined on"),
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_ => fmt!("the lifetime %s as defined on",
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bound_region_ptr_to_str(cx, fr.bound_region))
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};
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match cx.items.find(&fr.scope_id) {
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Some(&ast_map::node_block(ref blk)) => {
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let (msg, opt_span) = explain_span(cx, "block", blk.span);
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(fmt!("%s %s", prefix, msg), opt_span)
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}
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Some(_) | None => {
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// this really should not happen
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(fmt!("%s node %d", prefix, fr.scope_id), None)
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}
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}
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}
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re_static => { (~"the static lifetime", None) }
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re_empty => { (~"the empty lifetime", None) }
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// I believe these cases should not occur (except when debugging,
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// perhaps)
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re_infer(_) | re_bound(_) => {
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(fmt!("lifetime %?", region), None)
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}
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};
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fn explain_span(cx: ctxt, heading: &str, span: Span)
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-> (~str, Option<Span>)
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{
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let lo = cx.sess.codemap.lookup_char_pos_adj(span.lo);
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(fmt!("the %s at %u:%u", heading,
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lo.line, lo.col.to_uint()), Some(span))
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}
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}
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pub fn bound_region_ptr_to_str(cx: ctxt, br: bound_region) -> ~str {
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bound_region_to_str(cx, "&", true, br)
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}
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pub fn bound_region_to_str(cx: ctxt,
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prefix: &str, space: bool,
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br: bound_region) -> ~str {
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let space_str = if space { " " } else { "" };
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if cx.sess.verbose() { return fmt!("%s%?%s", prefix, br, space_str); }
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match br {
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br_named(id) => fmt!("%s'%s%s", prefix, cx.sess.str_of(id), space_str),
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br_self => fmt!("%s'self%s", prefix, space_str),
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br_anon(_) => prefix.to_str(),
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br_fresh(_) => prefix.to_str(),
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br_cap_avoid(_, br) => bound_region_to_str(cx, prefix, space, *br)
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}
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}
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pub fn re_scope_id_to_str(cx: ctxt, node_id: ast::NodeId) -> ~str {
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match cx.items.find(&node_id) {
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Some(&ast_map::node_block(ref blk)) => {
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fmt!("<block at %s>",
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cx.sess.codemap.span_to_str(blk.span))
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}
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Some(&ast_map::node_expr(expr)) => {
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match expr.node {
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ast::ExprCall(*) => {
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fmt!("<call at %s>",
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cx.sess.codemap.span_to_str(expr.span))
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}
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ast::ExprMatch(*) => {
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fmt!("<match at %s>",
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cx.sess.codemap.span_to_str(expr.span))
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}
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ast::ExprAssignOp(*) |
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ast::ExprUnary(*) |
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ast::ExprBinary(*) |
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ast::ExprIndex(*) => {
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fmt!("<method at %s>",
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cx.sess.codemap.span_to_str(expr.span))
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}
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_ => {
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fmt!("<expression at %s>",
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cx.sess.codemap.span_to_str(expr.span))
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}
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}
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}
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None => {
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fmt!("<unknown-%d>", node_id)
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}
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_ => { cx.sess.bug(
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fmt!("re_scope refers to %s",
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ast_map::node_id_to_str(cx.items, node_id,
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token::get_ident_interner()))) }
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}
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}
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// In general, if you are giving a region error message,
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// you should use `explain_region()` or, better yet,
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// `note_and_explain_region()`
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pub fn region_ptr_to_str(cx: ctxt, region: Region) -> ~str {
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region_to_str(cx, "&", true, region)
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}
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pub fn region_to_str(cx: ctxt, prefix: &str, space: bool, region: Region) -> ~str {
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let space_str = if space { " " } else { "" };
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if cx.sess.verbose() {
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return fmt!("%s%?%s", prefix, region, space_str);
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}
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// These printouts are concise. They do not contain all the information
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// the user might want to diagnose an error, but there is basically no way
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// to fit that into a short string. Hence the recommendation to use
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// `explain_region()` or `note_and_explain_region()`.
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match region {
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re_scope(_) => prefix.to_str(),
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re_bound(br) => bound_region_to_str(cx, prefix, space, br),
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re_free(ref fr) => bound_region_to_str(cx, prefix, space, fr.bound_region),
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re_infer(ReSkolemized(_, br)) => {
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bound_region_to_str(cx, prefix, space, br)
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}
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re_infer(ReVar(_)) => prefix.to_str(),
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re_static => fmt!("%s'static%s", prefix, space_str),
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re_empty => fmt!("%s'<empty>%s", prefix, space_str)
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}
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}
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fn mutability_to_str(m: ast::Mutability) -> ~str {
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match m {
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ast::MutMutable => ~"mut ",
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ast::MutImmutable => ~"",
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}
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}
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pub fn mt_to_str(cx: ctxt, m: &mt) -> ~str {
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mt_to_str_wrapped(cx, "", m, "")
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}
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pub fn mt_to_str_wrapped(cx: ctxt, before: &str, m: &mt, after: &str) -> ~str {
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let mstr = mutability_to_str(m.mutbl);
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return fmt!("%s%s%s%s", mstr, before, ty_to_str(cx, m.ty), after);
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}
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pub fn vstore_to_str(cx: ctxt, vs: ty::vstore) -> ~str {
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match vs {
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ty::vstore_fixed(n) => fmt!("%u", n),
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ty::vstore_uniq => ~"~",
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ty::vstore_box => ~"@",
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ty::vstore_slice(r) => region_ptr_to_str(cx, r)
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}
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}
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pub fn trait_store_to_str(cx: ctxt, s: ty::TraitStore) -> ~str {
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match s {
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ty::UniqTraitStore => ~"~",
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ty::BoxTraitStore => ~"@",
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ty::RegionTraitStore(r) => region_ptr_to_str(cx, r)
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}
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}
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pub fn vstore_ty_to_str(cx: ctxt, mt: &mt, vs: ty::vstore) -> ~str {
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match vs {
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ty::vstore_fixed(_) => {
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fmt!("[%s, .. %s]", mt_to_str(cx, mt), vstore_to_str(cx, vs))
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}
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_ => {
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fmt!("%s%s", vstore_to_str(cx, vs), mt_to_str_wrapped(cx, "[", mt, "]"))
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}
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}
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}
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pub fn vec_map_to_str<T>(ts: &[T], f: &fn(t: &T) -> ~str) -> ~str {
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let tstrs = ts.map(f);
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fmt!("[%s]", tstrs.connect(", "))
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}
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pub fn tys_to_str(cx: ctxt, ts: &[t]) -> ~str {
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vec_map_to_str(ts, |t| ty_to_str(cx, *t))
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}
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pub fn fn_sig_to_str(cx: ctxt, typ: &ty::FnSig) -> ~str {
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fmt!("fn%s -> %s",
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tys_to_str(cx, typ.inputs.map(|a| *a)),
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ty_to_str(cx, typ.output))
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}
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pub fn trait_ref_to_str(cx: ctxt, trait_ref: &ty::TraitRef) -> ~str {
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trait_ref.user_string(cx)
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}
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pub fn ty_to_str(cx: ctxt, typ: t) -> ~str {
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fn fn_input_to_str(cx: ctxt, input: ty::t) -> ~str {
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ty_to_str(cx, input)
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}
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fn bare_fn_to_str(cx: ctxt,
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purity: ast::purity,
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abis: AbiSet,
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ident: Option<ast::Ident>,
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sig: &ty::FnSig)
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-> ~str {
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let mut s = ~"extern ";
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s.push_str(abis.to_str());
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s.push_char(' ');
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match purity {
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ast::impure_fn => {}
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_ => {
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s.push_str(purity.to_str());
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s.push_char(' ');
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}
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};
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s.push_str("fn");
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match ident {
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Some(i) => {
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s.push_char(' ');
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s.push_str(cx.sess.str_of(i));
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}
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_ => { }
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}
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push_sig_to_str(cx, &mut s, sig);
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return s;
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}
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fn closure_to_str(cx: ctxt, cty: &ty::ClosureTy) -> ~str
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{
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let mut s = cty.sigil.to_str();
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match (cty.sigil, cty.region) {
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(ast::ManagedSigil, ty::re_static) |
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(ast::OwnedSigil, ty::re_static) => {}
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(_, region) => {
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s.push_str(region_to_str(cx, "", true, region));
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}
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}
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match cty.purity {
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ast::impure_fn => {}
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_ => {
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s.push_str(cty.purity.to_str());
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s.push_char(' ');
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}
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};
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match cty.onceness {
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ast::Many => {}
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ast::Once => {
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s.push_str(cty.onceness.to_str());
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s.push_char(' ');
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}
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};
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s.push_str("fn");
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if !cty.bounds.is_empty() {
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s.push_str(":");
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}
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s.push_str(cty.bounds.repr(cx));
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push_sig_to_str(cx, &mut s, &cty.sig);
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return s;
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}
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fn push_sig_to_str(cx: ctxt, s: &mut ~str, sig: &ty::FnSig) {
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s.push_char('(');
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let strs = sig.inputs.map(|a| fn_input_to_str(cx, *a));
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s.push_str(strs.connect(", "));
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s.push_char(')');
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if ty::get(sig.output).sty != ty_nil {
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s.push_str(" -> ");
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if ty::type_is_bot(sig.output) {
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s.push_char('!');
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} else {
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s.push_str(ty_to_str(cx, sig.output));
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}
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}
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}
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fn method_to_str(cx: ctxt, m: ty::Method) -> ~str {
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bare_fn_to_str(cx,
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m.fty.purity,
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m.fty.abis,
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Some(m.ident),
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&m.fty.sig) + ";"
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}
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fn field_to_str(cx: ctxt, f: field) -> ~str {
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return fmt!("%s: %s", cx.sess.str_of(f.ident), mt_to_str(cx, &f.mt));
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}
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// if there is an id, print that instead of the structural type:
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/*for def_id in ty::type_def_id(typ).iter() {
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// note that this typedef cannot have type parameters
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return ast_map::path_to_str(ty::item_path(cx, *def_id),
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cx.sess.intr());
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}*/
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// pretty print the structural type representation:
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return match ty::get(typ).sty {
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ty_nil => ~"()",
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ty_bot => ~"!",
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ty_bool => ~"bool",
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ty_int(ast::ty_i) => ~"int",
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ty_int(ast::ty_char) => ~"char",
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ty_int(t) => ast_util::int_ty_to_str(t),
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ty_uint(ast::ty_u) => ~"uint",
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ty_uint(t) => ast_util::uint_ty_to_str(t),
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ty_float(ast::ty_f) => ~"float",
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ty_float(t) => ast_util::float_ty_to_str(t),
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ty_box(ref tm) => ~"@" + mt_to_str(cx, tm),
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ty_uniq(ref tm) => ~"~" + mt_to_str(cx, tm),
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ty_ptr(ref tm) => ~"*" + mt_to_str(cx, tm),
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ty_rptr(r, ref tm) => {
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region_ptr_to_str(cx, r) + mt_to_str(cx, tm)
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}
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ty_unboxed_vec(ref tm) => { fmt!("unboxed_vec<%s>", mt_to_str(cx, tm)) }
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ty_type => ~"type",
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ty_tup(ref elems) => {
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let strs = elems.map(|elem| ty_to_str(cx, *elem));
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~"(" + strs.connect(",") + ")"
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}
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ty_closure(ref f) => {
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closure_to_str(cx, f)
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}
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ty_bare_fn(ref f) => {
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bare_fn_to_str(cx, f.purity, f.abis, None, &f.sig)
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}
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ty_infer(infer_ty) => infer_ty.to_str(),
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ty_err => ~"[type error]",
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ty_param(param_ty {idx: id, def_id: did}) => {
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let param_def = cx.ty_param_defs.find(&did.node);
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let ident = match param_def {
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Some(def) => {
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cx.sess.str_of(def.ident).to_owned()
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}
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None => {
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// This should not happen...
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fmt!("BUG[%?]", id)
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}
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};
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if !cx.sess.verbose() { ident } else { fmt!("%s:%?", ident, did) }
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}
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ty_self(*) => ~"Self",
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ty_enum(did, ref substs) | ty_struct(did, ref substs) => {
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let path = ty::item_path(cx, did);
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let base = ast_map::path_to_str(path, cx.sess.intr());
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parameterized(cx, base, &substs.regions, substs.tps)
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}
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ty_trait(did, ref substs, s, mutbl, ref bounds) => {
|
|
let path = ty::item_path(cx, did);
|
|
let base = ast_map::path_to_str(path, cx.sess.intr());
|
|
let ty = parameterized(cx, base, &substs.regions, substs.tps);
|
|
let bound_sep = if bounds.is_empty() { "" } else { ":" };
|
|
let bound_str = bounds.repr(cx);
|
|
fmt!("%s%s%s%s%s", trait_store_to_str(cx, s), mutability_to_str(mutbl), ty,
|
|
bound_sep, bound_str)
|
|
}
|
|
ty_evec(ref mt, vs) => {
|
|
vstore_ty_to_str(cx, mt, vs)
|
|
}
|
|
ty_estr(vs) => fmt!("%s%s", vstore_to_str(cx, vs), "str"),
|
|
ty_opaque_box => ~"@?",
|
|
ty_opaque_closure_ptr(ast::BorrowedSigil) => ~"&closure",
|
|
ty_opaque_closure_ptr(ast::ManagedSigil) => ~"@closure",
|
|
ty_opaque_closure_ptr(ast::OwnedSigil) => ~"~closure",
|
|
}
|
|
}
|
|
|
|
pub fn parameterized(cx: ctxt,
|
|
base: &str,
|
|
regions: &ty::RegionSubsts,
|
|
tps: &[ty::t]) -> ~str {
|
|
|
|
let mut strs = ~[];
|
|
match *regions {
|
|
ty::ErasedRegions => { }
|
|
ty::NonerasedRegions(ref regions) => {
|
|
for &r in regions.iter() {
|
|
strs.push(region_to_str(cx, "", false, r))
|
|
}
|
|
}
|
|
}
|
|
|
|
for t in tps.iter() {
|
|
strs.push(ty_to_str(cx, *t))
|
|
}
|
|
|
|
if strs.len() > 0u {
|
|
fmt!("%s<%s>", base, strs.connect(","))
|
|
} else {
|
|
fmt!("%s", base)
|
|
}
|
|
}
|
|
|
|
pub fn ty_to_short_str(cx: ctxt, typ: t) -> ~str {
|
|
let mut s = encoder::encoded_ty(cx, typ);
|
|
if s.len() >= 32u { s = s.slice(0u, 32u).to_owned(); }
|
|
return s;
|
|
}
|
|
|
|
impl<T:Repr> Repr for Option<T> {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
match self {
|
|
&None => ~"None",
|
|
&Some(ref t) => fmt!("Some(%s)", t.repr(tcx))
|
|
}
|
|
}
|
|
}
|
|
|
|
impl<T:Repr> Repr for @T {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
(&**self).repr(tcx)
|
|
}
|
|
}
|
|
|
|
impl<T:Repr> Repr for ~T {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
(&**self).repr(tcx)
|
|
}
|
|
}
|
|
|
|
fn repr_vec<T:Repr>(tcx: ctxt, v: &[T]) -> ~str {
|
|
vec_map_to_str(v, |t| t.repr(tcx))
|
|
}
|
|
|
|
impl<'self, T:Repr> Repr for &'self [T] {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
repr_vec(tcx, *self)
|
|
}
|
|
}
|
|
|
|
impl<T:Repr> Repr for OptVec<T> {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
match *self {
|
|
opt_vec::Empty => ~"[]",
|
|
opt_vec::Vec(ref v) => repr_vec(tcx, *v)
|
|
}
|
|
}
|
|
}
|
|
|
|
// This is necessary to handle types like Option<~[T]>, for which
|
|
// autoderef cannot convert the &[T] handler
|
|
impl<T:Repr> Repr for ~[T] {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
repr_vec(tcx, *self)
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::TypeParameterDef {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("TypeParameterDef {%?, bounds: %s}",
|
|
self.def_id, self.bounds.repr(tcx))
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::t {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
ty_to_str(tcx, *self)
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::substs {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("substs(regions=%s, self_ty=%s, tps=%s)",
|
|
self.regions.repr(tcx),
|
|
self.self_ty.repr(tcx),
|
|
self.tps.repr(tcx))
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::RegionSubsts {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
match *self {
|
|
ty::ErasedRegions => ~"erased",
|
|
ty::NonerasedRegions(ref regions) => regions.repr(tcx)
|
|
}
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::ParamBounds {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
let mut res = ~[];
|
|
for b in self.builtin_bounds.iter() {
|
|
res.push(match b {
|
|
ty::BoundStatic => ~"'static",
|
|
ty::BoundSend => ~"Send",
|
|
ty::BoundFreeze => ~"Freeze",
|
|
ty::BoundSized => ~"Sized",
|
|
});
|
|
}
|
|
for t in self.trait_bounds.iter() {
|
|
res.push(t.repr(tcx));
|
|
}
|
|
res.connect("+")
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::TraitRef {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
trait_ref_to_str(tcx, self)
|
|
}
|
|
}
|
|
|
|
impl Repr for ast::Expr {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("expr(%d: %s)",
|
|
self.id,
|
|
pprust::expr_to_str(self, tcx.sess.intr()))
|
|
}
|
|
}
|
|
|
|
impl Repr for ast::Pat {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("pat(%d: %s)",
|
|
self.id,
|
|
pprust::pat_to_str(self, tcx.sess.intr()))
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::bound_region {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
bound_region_ptr_to_str(tcx, *self)
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::Region {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
region_to_str(tcx, "", false, *self)
|
|
}
|
|
}
|
|
|
|
impl Repr for ast::DefId {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
// Unfortunately, there seems to be no way to attempt to print
|
|
// a path for a def-id, so I'll just make a best effort for now
|
|
// and otherwise fallback to just printing the crate/node pair
|
|
if self.crate == ast::LOCAL_CRATE {
|
|
match tcx.items.find(&self.node) {
|
|
Some(&ast_map::node_item(*)) |
|
|
Some(&ast_map::node_foreign_item(*)) |
|
|
Some(&ast_map::node_method(*)) |
|
|
Some(&ast_map::node_trait_method(*)) |
|
|
Some(&ast_map::node_variant(*)) |
|
|
Some(&ast_map::node_struct_ctor(*)) => {
|
|
return fmt!("%?:%s", *self, ty::item_path_str(tcx, *self));
|
|
}
|
|
_ => {}
|
|
}
|
|
}
|
|
return fmt!("%?", *self);
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::ty_param_bounds_and_ty {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("ty_param_bounds_and_ty {generics: %s, ty: %s}",
|
|
self.generics.repr(tcx),
|
|
self.ty.repr(tcx))
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::Generics {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("Generics {type_param_defs: %s, region_param: %?}",
|
|
self.type_param_defs.repr(tcx),
|
|
self.region_param)
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::Method {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("method {ident: %s, generics: %s, transformed_self_ty: %s, \
|
|
fty: %s, explicit_self: %s, vis: %s, def_id: %s}",
|
|
self.ident.repr(tcx),
|
|
self.generics.repr(tcx),
|
|
self.transformed_self_ty.repr(tcx),
|
|
self.fty.repr(tcx),
|
|
self.explicit_self.repr(tcx),
|
|
self.vis.repr(tcx),
|
|
self.def_id.repr(tcx))
|
|
}
|
|
}
|
|
|
|
impl Repr for ast::Ident {
|
|
fn repr(&self, _tcx: ctxt) -> ~str {
|
|
token::ident_to_str(self).to_owned()
|
|
}
|
|
}
|
|
|
|
impl Repr for ast::explicit_self_ {
|
|
fn repr(&self, _tcx: ctxt) -> ~str {
|
|
fmt!("%?", *self)
|
|
}
|
|
}
|
|
|
|
impl Repr for ast::visibility {
|
|
fn repr(&self, _tcx: ctxt) -> ~str {
|
|
fmt!("%?", *self)
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::BareFnTy {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("BareFnTy {purity: %?, abis: %s, sig: %s}",
|
|
self.purity,
|
|
self.abis.to_str(),
|
|
self.sig.repr(tcx))
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::FnSig {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fn_sig_to_str(tcx, self)
|
|
}
|
|
}
|
|
|
|
impl Repr for typeck::method_map_entry {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("method_map_entry {self_arg: %s, \
|
|
explicit_self: %s, \
|
|
origin: %s}",
|
|
self.self_ty.repr(tcx),
|
|
self.explicit_self.repr(tcx),
|
|
self.origin.repr(tcx))
|
|
}
|
|
}
|
|
|
|
impl Repr for typeck::method_origin {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
match self {
|
|
&typeck::method_static(def_id) => {
|
|
fmt!("method_static(%s)", def_id.repr(tcx))
|
|
}
|
|
&typeck::method_param(ref p) => {
|
|
p.repr(tcx)
|
|
}
|
|
&typeck::method_object(ref p) => {
|
|
p.repr(tcx)
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
impl Repr for typeck::method_param {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("method_param(%s,%?,%?,%?)",
|
|
self.trait_id.repr(tcx),
|
|
self.method_num,
|
|
self.param_num,
|
|
self.bound_num)
|
|
}
|
|
}
|
|
|
|
impl Repr for typeck::method_object {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
fmt!("method_object(%s,%?,%?)",
|
|
self.trait_id.repr(tcx),
|
|
self.method_num,
|
|
self.real_index)
|
|
}
|
|
}
|
|
|
|
|
|
impl Repr for ty::RegionVid {
|
|
fn repr(&self, _tcx: ctxt) -> ~str {
|
|
fmt!("%?", *self)
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::TraitStore {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
match self {
|
|
&ty::BoxTraitStore => ~"@Trait",
|
|
&ty::UniqTraitStore => ~"~Trait",
|
|
&ty::RegionTraitStore(r) => fmt!("&%s Trait", r.repr(tcx))
|
|
}
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::vstore {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
vstore_to_str(tcx, *self)
|
|
}
|
|
}
|
|
|
|
impl Repr for ast_map::path_elt {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
match *self {
|
|
ast_map::path_mod(id) => id.repr(tcx),
|
|
ast_map::path_name(id) => id.repr(tcx)
|
|
}
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::BuiltinBound {
|
|
fn repr(&self, _tcx: ctxt) -> ~str {
|
|
fmt!("%?", *self)
|
|
}
|
|
}
|
|
|
|
impl UserString for ty::BuiltinBound {
|
|
fn user_string(&self, _tcx: ctxt) -> ~str {
|
|
match *self {
|
|
ty::BoundStatic => ~"'static",
|
|
ty::BoundSend => ~"Send",
|
|
ty::BoundFreeze => ~"Freeze",
|
|
ty::BoundSized => ~"Sized",
|
|
}
|
|
}
|
|
}
|
|
|
|
impl Repr for ty::BuiltinBounds {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
self.user_string(tcx)
|
|
}
|
|
}
|
|
|
|
impl Repr for Span {
|
|
fn repr(&self, tcx: ctxt) -> ~str {
|
|
tcx.sess.codemap.span_to_str(*self)
|
|
}
|
|
}
|
|
|
|
impl<A:UserString> UserString for @A {
|
|
fn user_string(&self, tcx: ctxt) -> ~str {
|
|
let this: &A = &**self;
|
|
this.user_string(tcx)
|
|
}
|
|
}
|
|
|
|
impl UserString for ty::BuiltinBounds {
|
|
fn user_string(&self, tcx: ctxt) -> ~str {
|
|
if self.is_empty() { ~"<no-bounds>" } else {
|
|
let mut result = ~[];
|
|
for bb in self.iter() {
|
|
result.push(bb.user_string(tcx));
|
|
}
|
|
result.connect("+")
|
|
}
|
|
}
|
|
}
|
|
|
|
impl UserString for ty::TraitRef {
|
|
fn user_string(&self, tcx: ctxt) -> ~str {
|
|
let path = ty::item_path(tcx, self.def_id);
|
|
let base = ast_map::path_to_str(path, tcx.sess.intr());
|
|
if tcx.sess.verbose() && self.substs.self_ty.is_some() {
|
|
let mut all_tps = self.substs.tps.clone();
|
|
for &t in self.substs.self_ty.iter() { all_tps.push(t); }
|
|
parameterized(tcx, base, &self.substs.regions, all_tps)
|
|
} else {
|
|
parameterized(tcx, base, &self.substs.regions, self.substs.tps)
|
|
}
|
|
}
|
|
}
|
|
|
|
impl UserString for ty::t {
|
|
fn user_string(&self, tcx: ctxt) -> ~str {
|
|
ty_to_str(tcx, *self)
|
|
}
|
|
}
|
|
|
|
impl Repr for AbiSet {
|
|
fn repr(&self, _tcx: ctxt) -> ~str {
|
|
self.to_str()
|
|
}
|
|
}
|
|
|
|
impl UserString for AbiSet {
|
|
fn user_string(&self, _tcx: ctxt) -> ~str {
|
|
self.to_str()
|
|
}
|
|
}
|